The true nature of the di-iron(III) γ-keggin structure in water:: Catalytic aerobic oxidation and chemistry of an unsymmetrical trimer

被引:104
作者
Botar, Bogdan
Geletii, Yurii V.
Kogerler, Paul
Musaev, Djamaladdin G.
Morokuma, Keiji
Weinstock, Ira A. [1 ]
Hill, Craig L.
机构
[1] CUNY City Coll, Dept Chem, New York, NY 10031 USA
[2] Emory Univ, Dept Chem, Atlanta, GA 30322 USA
[3] Iowa State Univ, Ames Lab, Ames, IA 50011 USA
关键词
D O I
10.1021/ja063157l
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The complex [gamma(1,2)-SiW10{Fe(OH2)}(2)O-38](6-) (1) has been reported to catalyze the much sought reductant-free selective O(2-)based epoxidation of alkenes (Nishiyama, Y.; Nakagawa, Y.; Mizuno, N. Angew. Chem. Int. Ed. 2001, 40, 3639- 3641) in chlorocarbon-acetonitrile solution. The challenge of reproducing catalysis by 1 led us to examine this chemistry in detail. In H2O, a desirable solvent for catalysis, 1, does not exist in the proposed organic-medium form in which the two iron atoms are in the binding pocket defined by the equatorial oxygens and, importantly, by two oxygens bound to the central Si heteroatom. Instead, 1 in H2O initially forms an unusual trimer [{Fe-2(OH)(3)(H2O)(2)}(3)(gamma-SiW10O36)(3)](15-) (2). The X-ray structure of 2 shows that the Fe-O-Si bonds are cleaved and new bonds (A-hydroxo bridges) form between these Fe centers and those of the neighboring [gamma(1,2)-SiW10Fe2] units. Structural, physical, and computational evidence indicate that if the bonds between the d-electron center, M ( Fe in the case of 1 and 2), and the terminal ligands on M are stronger than the M-O-x bonds, then the out-of-pocket form is more stable and is the one observed. Significantly, 2 in H2O forms an intermediate that catalyzes the effective aerobic oxidation of sulfur compounds (mercaptoethanol is oxidized to the corresponding disulfide by O-2 at ambient pressure and temperature). All experimental findings are consistent with dissociation of a gamma-SiW10 Keggin unit from the trimer, 2, to form the catalytically active species.
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页码:11268 / 11277
页数:10
相关论文
共 74 条
[11]   DISUBSTITUTED TUNGSTOSILICATES .1. SYNTHESIS, STABILITY, AND STRUCTURE OF THE LACUNARY PRECURSOR POLYANION GAMMA-SIW10O368- [J].
CANNY, J ;
TEZE, A ;
THOUVENOT, R ;
HERVE, G .
INORGANIC CHEMISTRY, 1986, 25 (13) :2114-2119
[12]   Formation, isomerization, and derivatization of Keggin tungstoaluminates [J].
Cowan, JJ ;
Bailey, AJ ;
Heintz, RA ;
Do, BT ;
Hardeastle, KI ;
Hill, CL ;
Weinstock, IA .
INORGANIC CHEMISTRY, 2001, 40 (26) :6666-6675
[13]   Stereoisomerism in polyoxometalates: structural and spectroscopic studies of bis(malate)-functionalized cluster systems [J].
Fang, XK ;
Anderson, TM ;
Hou, Y ;
Hill, CL .
CHEMICAL COMMUNICATIONS, 2005, (40) :5044-5046
[14]   Enantiomerically pure polytungstates: Chirality transfer through zirconium coordination centers to nanosized inorganic clusters [J].
Fang, XK ;
Anderson, TM ;
Hill, CL .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (23) :3540-3544
[15]  
Frisch MJ, 2003, GAUSSIAN 2003
[16]   CHIRALITY OF OXIDIZED AND REDUCED OCTADECAMOLYBDODIPHOSPHATE ANIONS - OBSERVATION OF A PFEIFFER EFFECT [J].
GARVEY, JF ;
POPE, MT .
INORGANIC CHEMISTRY, 1978, 17 (05) :1115-1118
[17]   Dioxygen activation in methane monooxygenase: A theoretical study [J].
Gherman, BF ;
Baik, MH ;
Lippard, SJ ;
Friesner, RA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (09) :2978-2990
[18]   Synthesis, structural characterization, and catalytic performance of dititanium-substituted γ-Keggin silicotungstate [J].
Goto, Y ;
Kamata, K ;
Yamaguchi, K ;
Uehara, K ;
Hikichi, S ;
Mizuno, N .
INORGANIC CHEMISTRY, 2006, 45 (05) :2347-2356
[19]   AEROBIC EPOXIDATION OF OLEFINS WITH RUTHENIUM PORPHYRIN CATALYSTS [J].
GROVES, JT ;
QUINN, R .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (20) :5790-5792
[20]  
HAY PJ, 1985, J CHEM PHYS, V82, P299, DOI [10.1063/1.448800, 10.1063/1.448799]